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Exposure Time Impact on the Geomechanical Characteristics of Sandstone Formation during Horizontal Drilling

机译:暴露时间对水平钻井过程中砂岩形成的地质力学特性的影响

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摘要

The rock geomechanical properties are the key parameters for designing the drilling and fracturing operations and for programing the geomechanical earth models. During drilling, the horizontal-section drilling fluids interact with the reservoir rocks in different exposure time, and to date, there is no comprehensive work performed to study the effect of the exposure time on the changes in sandstone geomechanical properties. The objective of this paper is to address the exposure time effect on sandstone failure parameters such as unconfined compressive strength, tensile strength, acoustic properties, and dynamic elastic moduli while drilling horizontal sections using barite-weighted water-based drilling fluid. To simulate the reservoir conditions, Buff Berea sandstone core samples were exposed to the drilling fluid (using filter press) under 300 psi differential pressure and 200 °F temperature for different exposure times (up to 5 days). The rock characterization and geomechanical parameters were evaluated as a function of the exposure time. Scratch test was implemented to evaluate rock strength, while ultrasonic pulse velocity was used to obtain the sonic data to estimate dynamic elastic moduli. The rock characterization was accomplished by X-ray diffraction, nuclear magnetic resonance, and scanning electron microscope. The study findings showed that the rock compression and tensile strengths reduced as a function of exposure time (18% and 19% reduction for tensile strength and unconfined compression strength, respectively, after 5 days), while the formation damage displayed an increasing trend with time. The sonic results demonstrated an increase in the compressional and shear wave velocities with increasing exposure time. All the dynamic elastic moduli showed an increasing trend when extending the exposure time except Poisson’s ratio which presented a constant behavior after 1 day. Nuclear magnetic resonance results showed 41% porosity reduction during the five days of mud interaction. Scanning electron microscope images showed that the rock internal surface topography and internal integrity changed with exposure time, which supported the observed strength reduction and sonic variation. A new set of empirical correlations were developed to estimate the dynamic elastic moduli and failure parameters as a function of the exposure time and the porosity with high accuracy.
机译:岩石的地质力学特性是设计钻井和压裂作业以及对地质力学地球模型进行编程的关键参数。在钻井过程中,水平断面钻井液在不同的暴露时间内与储层岩石相互作用,迄今为止,还没有进行全面的研究来研究暴露时间对砂岩地质力学性质变化的影响。本文的目的是解决在使用重晶石加权水基钻井液进行水平剖面钻井时,砂岩破坏参数(如无侧限抗压强度,抗拉强度,声学特性和动态弹性模量)的暴露时间影响。为了模拟储层条件,将Buff Berea砂岩岩心样品在压差为300 psi和温度为200°F的温度下(使用压滤机)暴露于钻井液中不同的暴露时间(最多5天)。根据暴露时间评估岩石特征和岩土力学参数。进行刮擦测试以评估岩石强度,同时使用超声波脉冲速度获取声波数据以估计动态弹性模量。岩石的表征是通过X射线衍射,核磁共振和扫描电子显微镜完成的。研究结果表明,岩石的抗压强度和抗拉强度随暴露时间的延长而降低(5天后抗拉强度和无侧限抗压强度分别降低18%和19%),而地层破坏随时间呈增加趋势。声波结果表明,随着暴露时间的增加,压缩波和剪切波的速度增加。延长暴露时间时,所有动态弹性模量均呈增加趋势,但泊松比在1天后表现出恒定的行为。核磁共振结果显示,在泥浆相互作用的五天内,孔隙率降低了41%。扫描电子显微镜图像显示岩石的内部表面形貌和内部完整性随暴露时间而变化,这支持了观察到的强度降低和声波变化。开发了一组新的经验相关性,以高精度估计动态弹性模量和破坏参数随暴露时间和孔隙率的变化。

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